首页> 外文期刊>The Journal of Organic Chemistry >Diastereoselective synthesis of piperidine imino sugars using aldol additions of metalated bislactim ethers to threose and erythrose acetonides
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Diastereoselective synthesis of piperidine imino sugars using aldol additions of metalated bislactim ethers to threose and erythrose acetonides

机译:非金属选择性合成哌啶亚氨基糖的方法是,在金属糖醛酸和赤藓糖丙酮中添加金属化的双lactimin醚进行醛醇缩合

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A general strategy for the synthesis of 1-deoxy-azasugars from a chiral glycine equivalent and 4-carbon building blocks is described. Diastereoselective aldol additions of metalated bislactim ethers to matched and mismatched erythrose or threose acetonides and intramolecular N-alkylation (by reductive amination or nucleophilic substitution) were used as key steps. The dependence of the yield and the asymmetric induction of the aldol addition with the nature of the metallic counterion of the azaenolate and the gamma-alkoxy protecting group for the erythrose or threose acetonides has been studied. The stereochemical outcome of the aldol additions with tin(II) azaenolates has been rationalized with the aid of density functional theory (DFT) calculations. In accordance with I)FT calculations with model glyceraldehyde acetonides, high trans,syn,anti-selectivitity for the matched pairs and moderate to low trans,anti,anti-selectivity for the mismatched ones may originate from (1) the intervention of solvated aggregates of tin(II) azaenolate and lithium chloride as the reactive species and (2) favored chair-like transition structures with a Cornforth-like conformation for the aldehyde moiety. DFT calculations indicate that aldol additions to erythrose acetonides proceed by an initial deprotonation, followed by coordination of the alkoxy-derivative to the tin(II) azaenolate and final reorganization of the intermediate complex through pericyclic transition structures in which the erythrose moiety is involved in a seven-membered chelate ring. The preparative utility of the aldol-based approach was demonstrated by application in concise routes for the synthesis of the glycosidase inhibitors 1-deoxy-D-allonojirimycin, 1-deoxy-L-altronojirimycin, 1-deoxy-D-gulonojirimycin, 1-deoxy-D-galactonojirimycin, 1-deoxy-L-idonojirimycin and 1-deoxy-D-talonojirimycin.
机译:描述了从手性甘氨酸当量和4-碳构件合成1-脱氧-天冬酰胺的一般策略。将金属化双内酰胺醚的非对映选择性醛醇加成至匹配和不匹配的赤藓糖或苏糖丙酮化物以及分子内N-烷基化(通过还原胺化或亲核取代)用作关键步骤。研究了赤藓糖醇或苏糖酸丙酮化物中氮杂烯酸酯的金属抗衡离子和γ-烷氧基保护基团的性质和醛醇加成反应的不对称诱导率。借助密度泛函理论(DFT)计算已合理化了氮杂酸锡(II)与醛醇缩合的立体化学结果。根据I)FT模型甘油醛丙酮化物的计算,匹配对的高反式,正反抗选择性和错配的中至低反式,抗反选择性可能源于(1)溶剂化聚集体的干预(2)氮杂锡(II)和氯化锂作为反应性物质;(2)偏爱带有椅子结构的,醛基具有Cornforth构型的过渡结构。 DFT计算表明,向赤藓糖丙酮中添加羟醛的过程是先进行去质子化,然后将烷氧基衍生物与氮杂锡(II)进行配位,并通过周环过渡结构最终重组中间配合物,在该结构中赤藓糖部分参与了七元螯合环。通过在简明途径中合成糖苷酶抑制剂1-脱氧-D-allonojirimycin,1-脱氧-L-altroojirimycin,1-deoxy-D-gulonojirimycin,1-deoxy的合成,证明了基于醇醛缩醛的方法的制备效用。 -D-半乳糖苷,1-脱氧-L-异onodrimrimycin和1-脱氧-D-talonojirimycin。

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